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对……中关键基因的分析揭示了保守的RNA结构基序以及明显有保持非结构化倾向的区域。 (注:原文中“Analysis of key genes in”后面缺少具体内容)

Analysis of key genes in reveals conserved RNA structural motifs and regions with apparent pressure to remain unstructured.

作者信息

Rouse Warren B, Gart Jessica, Peysakhova Lauren, Moss Walter N

机构信息

Roy J. Carver Department of Biochemistry, Biophysics, and Molecular Biology, Iowa State University, Ames, IA, United States.

Science and Engineering Research Program (SERP), Staten Island Technical High School, Staten Island, NY, United States.

出版信息

Front Trop Dis. 2022;3. doi: 10.3389/fitd.2022.1009362. Epub 2022 Oct 13.

Abstract

Buruli Ulcer is a neglected tropical disease that results in disfiguring and dangerous lesions in affected persons across a wide geographic area, including much of West Africa. The causative agent of Buruli Ulcer is , a relative of the bacterium that causes tuberculosis and leprosy. Few therapeutic options exist for the treatment of this disease beyond antibiotics in the early stages, which are frequently ineffective, and surgical removal in the later stage. In this study we analyze six genes in that have high potential of therapeutic targeting. We focus our analysis on a combined in silico and comparative sequence study of potential RNA secondary structure across these genes. The result of this work was the comprehensive local RNA structural landscape across each of these significant genes. This revealed multiple sites of ordered and evolved RNA structure interspersed between sequences that either have no bias for structure or, indeed, appear to be ordered to be unstructured and (potentially) accessible. In addition to providing data that could be of interest to basic biology, our results provide guides for efforts aimed at targeting this pathogen at the RNA level. We explore this latter possibility through the analysis of antisense oligonucleotides that could potentially be used to target pathogen RNA.

摘要

布鲁里溃疡是一种被忽视的热带疾病,会在包括西非大部分地区在内的广泛地理区域内,导致患者出现毁容性且危险的损伤。布鲁里溃疡的病原体是 ,它是导致结核病和麻风病的细菌的近亲。除了早期使用抗生素治疗(但抗生素往往无效)以及后期进行手术切除外,治疗这种疾病的治疗选择很少。在本研究中,我们分析了 中六个具有高治疗靶向潜力的基因。我们将分析重点放在对这些基因潜在RNA二级结构的计算机模拟和比较序列联合研究上。这项工作的结果是获得了每个这些重要基因的全面局部RNA结构图谱。这揭示了多个有序且进化的RNA结构位点,散布在对结构无偏好的序列之间,或者实际上看起来是有序地形成无结构且(可能)可及的状态。除了提供基础生物学可能感兴趣的数据外,我们的结果还为旨在在RNA水平靶向这种病原体的研究提供了指导。我们通过分析可能用于靶向病原体RNA的反义寡核苷酸来探索后一种可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/14cc/10062443/1fdb683f8a31/nihms-1880345-f0001.jpg

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